Saifullah Md, Akanbi Taiwo Olusesan, McCullum Rebecca, Vuong Quan Van
School of Environmental and Life Sciences, College of Engineering, Science and Environment, The University of Newcastle, Ourimbah, NSW 2258, Australia.
Department of Agro Product Processing Technology, Faculty of Applied Science and Technology, Jashore University of Science and Technology, Jashore 7408, Bangladesh.
Foods. 2021 Dec 26;11(1):50. doi: 10.3390/foods11010050.
The lemon-scented tea tree (LSTT) is an Australian native herb and is a rich source of essential oil and phenolics. The ETHOS X extraction system is known as a commercial microwave-assisted extraction (MAE) system for extracting bioactive compounds from plant materials. This study investigated the influence of soaking time, radiation time, microwave power, and sample to solvent ratio on the extraction efficiency of polyphenols and antioxidant properties from lemon-scented tea tree leaves and optimized the extraction conditions using response surface methodology (RSM). The effectiveness of ETHOS X was further compared with ultrasound-assisted extraction (UAE) and shaking water bath (SWB) techniques. The results revealed that soaking time did not significantly affect the recovery of phenolics from the leaves ( > 0.05). Thus, soaking is not required for the ETHOS X extraction of polyphenols from LSTT leaves. RSM was successfully applied to explore the impact of ETHOS X extraction conditions and optimize the extraction conditions. Radiation time significantly affects the recovery yield of phenolics ( < 0.05) positively, whereas irradiation power and sample to solvent ratio adversely influenced the extraction yields of phenolics. The optimal ETHOS X extraction conditions were: radiation time of 60 min, irradiation power of 600 W, and sample to solvent ratio of 2 g/100 mL. Under these conditions, 119.21 ± 7.09 mg of phenolic, 85.31 ± 4.55 mg of flavonoids, and 137.51 ± 12.52 mg of proanthocyanidins can be extracted from a gram of dried LSTT leaves. In comparison with UAE and SWB, ETHOS X is not more effective for the extraction of phenolics than UAE and SWB. However, this technique can save half of the solvent volume compared to UAE and SWB techniques.
柠檬香茶树(LSTT)是一种澳大利亚本土草本植物,是精油和酚类物质的丰富来源。ETHOS X提取系统是一种用于从植物材料中提取生物活性化合物的商用微波辅助提取(MAE)系统。本研究考察了浸泡时间、辐射时间、微波功率和样品与溶剂比,对柠檬香茶树叶片中多酚提取效率和抗氧化性能的影响,并采用响应面法(RSM)优化了提取条件。进一步将ETHOS X的有效性与超声辅助提取(UAE)和振荡水浴(SWB)技术进行了比较。结果表明,浸泡时间对叶片中酚类物质的回收率没有显著影响(>0.05)。因此,使用ETHOS X从LSTT叶片中提取多酚不需要浸泡。RSM成功地用于探索ETHOS X提取条件的影响并优化提取条件。辐射时间对酚类物质的回收率有显著的正向影响(<0.05),而辐射功率和样品与溶剂比对酚类物质的提取率有不利影响。ETHOS X的最佳提取条件为:辐射时间60分钟,辐射功率600瓦,样品与溶剂比2克/100毫升。在这些条件下,每克干燥的LSTT叶片可提取119.21±7.09毫克酚类、85.31±4.55毫克黄酮类和137.51±12.52毫克原花青素。与UAE和SWB相比,ETHOS X在提取酚类物质方面并不比UAE和SWB更有效。然而,与UAE和SWB技术相比,该技术可节省一半的溶剂量。